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#nucleic acid sample preparation kits market
123567-9qaaq9 · 5 months
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Nucleic Acid Sample Preparation Kits Market Future Trends to Look Out | Bis Research
Nucleic acid sample preparation kits are specialized sets of reagents and protocols designed to extract, purify, and amplify nucleic acids (such as DNA or RNA) from biological samples. 
The global nucleic acid sample preparation market is projected to reach $5,615.9 million by 2033 from $2,922.8 million in 2023, growing at a CAGR of 6.75% during the forecast period 2023-2033.
 Nucleic Acid Sample Preparation Kits Overview
These kits typically include various components such as buffers, enzymes, columns, and beads optimized for specific sample types (e.g., blood, tissue, or microbial cultures) and downstream applications (e.g., PCR, sequencing, or cloning). 
The process of nucleic acid sample preparation involves lysing cells or disrupting tissues to release nucleic acids, removing contaminants (e.g., proteins, lipids, and inhibitors), and concentrating or amplifying the nucleic acids for subsequent analysis. 
Nucleic acid sample preparation kits play a crucial role in molecular biology and diagnostic workflows, enabling researchers and clinicians to obtain high-quality nucleic acid samples for a wide range of applications, including research, clinical diagnostics, forensics, and personalized medicine.
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Key Market Players 
 Agilent Technologies, Inc.
 Autogen, Inc.
 Bio-Rad Laboratories, Inc.
Roche AG
Merck KGaA
and many others  
The Nucleic Acid Isolation and Purification Market has made an impact in the following ways:
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Market Segmentation
Product Type 
End Users 
Applications 
Geography 
Various different applications involved are as follows 
Drug development and discovery 
Agriculture Biotechnology 
Molecular Diagnosis 
 Market Dynamics for Nucleic Acid Sample Preparation
Market Drivers 
increasing prevalence of market disease and cancer cases  
growing number of genetic tests 
Market Restraints 
genomic data protection 
Market Opportunities 
Development and utilization of biobanks in healthcare sector 
Recent Developments in the Nucleic Acid Sample Preparation Market
Qiagen N.V. introduced two groundbreaking additions to its sample technologies portfolio, i.e., the TissueLyser III that facilitates high-throughput disruption of diverse biological samples and the RNeasy PowerMax Soil Pro Kit that isolates high-purity RNA from challenging soil samples using advanced Inhibitor Removal Technology.
PerkinElmer introduced the CHEF Magnetic Bead Cleanup System, providing automated nucleic acid purification through advanced magnetic bead technology. This novel system would help automate the nucleic acid purification process efficiently.
Conclusion
In conclusion, nucleic acid sample preparation kits play a fundamental role in modern molecular biology and diagnostics, offering a versatile and efficient solution for extracting, purifying, and amplifying nucleic acids from various biological samples. 
With ongoing advancements in technology and innovation, nucleic acid sample preparation kits continue to evolve, driving progress in diverse fields and contributing to improvements in human health, environmental sustainability, and global well-being.
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ankitab · 5 days
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Exploring the Sample Preparation Market: Applications, Key Players, and Market Outlook
The Sample Preparation Market is projected to reach $12.77 billion by 2031, growing at a CAGR of 6.4% from 2024 to 2031. This growth is driven by advancements in sample preparation procedures, increased automation in laboratories, the establishment of bio-clusters to support research, rising R&D investments in the pharmaceutical and biotechnology sectors, and active research in genomics and proteomics.
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Furthermore, the expanding applications of sample preparation in emerging economies and the increased focus on personalized medicine present significant market growth opportunities.
Sample Preparation Market Growth Drivers
Technological Advances in Sample Preparation Procedures
Advancements in sample preparation techniques have led to increased efficiency and accuracy. These improvements include integrating multiple steps into a single chip for point-of-care devices, miniaturizing extraction techniques, and developing automated systems. Automation enhances sample processing speed, reduces errors, increases safety for lab technicians, and improves customization and optimization for research protocols. Miniaturized extraction techniques, which use less organic solvents and reagents, require smaller sample amounts, simplify procedures, and offer high enrichment factors, are also gaining traction.
Increasing R&D Investments
Pharmaceutical companies are heavily investing in R&D and expanding manufacturing facilities to meet market demand. According to the International Federation of Pharmaceutical Manufacturers and Associations (IFPMA), R&D investments in the U.S. and Europe have grown significantly. In the U.S., venture capital investment in biotechnology firms for R&D increased from $11 billion in 2015 to $15 billion in 2020. Similarly, R&D activities in the food and beverage industry, aimed at developing products with higher nutritional value and longer shelf life, are driving the demand for sample preparation products and software.
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Sample Preparation Market Opportunity
Widening Applications in Emerging Economies
Emerging economies like China, Japan, and India are making significant investments in R&D across various industries, including biotechnology, pharmaceuticals, food and beverages, and environmental sciences. Robust sample preparation techniques are essential for these studies. Additionally, advances in healthcare infrastructure in countries like India and China, including the development of new diagnostic laboratories, hospitals, and clinics, are driving the demand for sample preparation procedures.
Sample Preparation Market Analysis: Key Findings
By Product: Consumables Segment to Dominate in 2024
The sample preparation market is segmented into consumables, instruments, workstations, and software. In 2024, the consumables segment is expected to hold the largest share at 50.8%. This growth is driven by new product launches, increased use of analytical techniques, and the frequent usage of isolation, extraction, and purification kits for nucleic acids and proteins.
By Technique: Solid Phase Extraction (SPE) Segment to Dominate in 2024
The market is segmented into Solid Phase Extraction (SPE), Liquid Phase Extraction (LPE), filtration, dilution, precipitation, and other techniques. In 2024, the SPE segment is expected to hold the largest share due to advancements in automated and miniaturized devices and its widespread use in various industries such as pharmaceuticals, environmental analysis, food and beverage, clinical diagnostics, and forensic sciences.
By Application: Drug Discovery Segment to Dominate in 2024
The market is segmented into drug discovery, diagnostics, genomic studies, proteomic studies, analytical testing, and other applications. In 2024, the drug discovery segment is expected to hold the largest share due to high R&D expenditure in the pharmaceutical industry, the prevalence of non-infectious and infectious diseases, and increasing collaborations between research institutes and pharmaceutical companies
Sample Preparation Market: Key Companies
The competitive landscape includes key market players such as Agilent Technologies, Inc. (U.S.), Bio-Rad Laboratories, Inc. (U.S.), Danaher Corporation (U.S.), Illumina, Inc. (U.S.), Merck KGaA (Germany), Hamilton Company (U.S.), PerkinElmer, Inc. (U.S.), QIAGEN N.V. (Netherlands), F. Hoffmann-La Roche Ltd (Switzerland), Thermo Fisher Scientific Inc. (U.S.), Tecan Group Ltd. (Switzerland), Promega Corporation (U.S.), and Norgen Biotek Corp. (Canada). The top 4-5 players hold approximately 53-58% of the global market share.
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creativeera · 12 days
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DNA and RNA Sample Preparation Market is Estimated to Witness High Growth Owing to Increasing Adoption
The DNA and RNA sample preparation market involves processes associated with isolation, extraction, purification and quantification of nucleic acids DNA and RNA from various sources like tissues, blood, sperm, cells etc. for downstream applications in genomics, molecular diagnostics, personalized medicine and others. The sample preparation is a critical and initial step before conducting various genomic tests including Next Generation Sequencing, polymerase chain reaction and other assays. Growing awareness and adoption of precision medicine and genetic/molecular testing is driving demand for efficient nucleic acid isolation and downstream analysis.
The Global DNA and RNA Sample Preparation Market is estimated to be valued at US$ 2262.46 Mn in 2024 and is expected to exhibit a CAGR of 5.8% over the forecast period 2024 To 2031. Key Takeaways Key players operating in the DNA and RNA sample preparation are Agilent Technologies, Inc., Becton, Dickinson and Company, Bio-Rad Laboratories Inc., DiaSorin S.p.A, F. Hoffmann-La Roche, Miroculus, Inc., Illumina, Inc., PerkinElmer, Inc., QIAGEN, Sigma Aldrich Corp., Tecan Group AG, and Thermo Fisher Scientific, Inc. Growing prominence of personalized medicine is creating opportunities for development of new sample preparation methods and kits which can extract nucleic acids from various types of samples. Rising incidence of chronic and infectious diseases worldwide is increasing diagnostic testing which will propel sample preparation market growth. Global expansion of key market players through acquisitions and partnerships with regional diagnostic labs and research institutes will further augment market revenues. Market Drivers Increasing funding for Genomic and genetic research from government bodies as well as private sector is one of the key factors driving the DNA and RNA Sample Preparation Market Size. Government initiatives aimed at large scale population screening and clinical testing for various genetic disorders, infectious diseases and cancers are also creating demand for high throughput nucleic acid preparation. Growing geriatric population and rising healthcare spending in developing nations also provides growth opportunities for market players in the forecast period.
PEST Analysis Political: Laws and regulations imposed by governments for research using DNA and RNA samples could impact the market. Changes in healthcare policies will also have effects. Economic: Factors like GDP growth, income levels, healthcare spending will drive demand. Rise in research activities and focus on precision medicine boost the market. Social: Growing awareness about personalized medicine and importance of genetic testing are important. Social trends also promote preventive healthcare and wellness. Technological: Advancements in fields like next generation sequencing, lab automation, bioinformatics are key for market growth. Miniaturization and portability of equipment expand applications. Developments in sample collection and storage methods improve efficiency. Geographical regions where the market in terms of value is concentrated include North America and Europe. North America accounts for the largest share in the global market due to presence of well-established healthcare industry and research institutes. Europe also captures notable share due to growing biotech sector and research funding. The Asia Pacific region is projected to be the fastest growing market during the forecast period. This is attributed to factors such as increasing healthcare expenditure, growing awareness, expanding biotech industry and rising government investments in research. Countries like China, India offer growth opportunities as they focus on healthcare infrastructure development.
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healthcarehubhh · 2 months
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Biotechnology Reagents and Kits Market will grow at highest pace owing to increasing R&D activities in biopharmaceutical companies
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Biotechnology reagents and kits are used for several diagnostic and research applications including isolation, purification, and analysis of DNA and RNA. Some key products in this market include cell and tissue culture reagents, chromatography reagents, electrophoresis reagents, immunohistochemistry reagents, nucleic acid extraction and purification reagents, PCR reagents, flow cytometry reagents, electrophoresis reagents, and separation and filtration reagents. Growing funding for biotechnology research along with rising prevalence of chronic diseases has increased the demand for biotechnology reagents and kits. Advancements in biologics and personalized medicine require reagents and kits for molecular analysis of patient samples which has fueled market growth.
The Global Biotechnology Reagents and Kits Market is estimated to be valued at US$ 718.8 Mn in 2024 and is expected to exhibit a CAGR of 23% over the forecast period 2023 to 2030.
Key Takeaways Key players operating in the Biotechnology Reagents and Kits are Medtronic Plc, Hill-Rom Holdings, Inc. (Welch Allyn), iRythm Technologies, Inc., AliveCor, Inc., Vivalnk, Inc., Cardiac Insight Inc., VitalConnect, LifeSignals, Inc., Lâ€TMoreal Group, Dexcom, Inc., GENTAG, Inc., Abbott Laboratories, Koninklijke Philips N.V. and other prominent players. These players are focusing on new product development and launches to expand their product portfolio. For instance, in 2022 Medtronic Plc launched Clara Smart Pancreas System which uses RTSM technology to automatically suspend insulin delivery. The demand for biotechnology reagents and kits is growing owing to increasing demand of personalized medicine, genomics applications and cell and gene therapy research. Pharmacogenomics, companion diagnostics and molecular biomarkers are driving the need for reagents and assays utilized in the discovery, development and commercialization of personalized medicine. Growing R&D spending on developing new biologics and rising application of big data analytics in drug development is also fueling market growth. Technological advancements are expanding application of biotechnology reagents and kits in new areas. For example, next generation sequencing techniques have enabled large-scale sequencing of genomes which requires reagents for sample preparation and library preparation steps. Rapid diagnostics technologies are allowing point-of-care application of reagents for fast detection of infectious diseases. Automated instruments with integrated reagent kits are increasing efficiency and reproducibility of experiments in core labs. Market trends: 1. Growing preference for personalized medicine/ precision medicine. Biomarker discovery and validation requires biomarker detection assays which is propelling demand for immunohistochemistry, PCR and other reagents. 2. Increasing focus on contract research and contract manufacturing. CROs and CMOs require a continuous supply of biotechnology reagents and kits for conducting research and manufacturing activities on behalf of biopharma companies. Market Opportunities: 1. Emerging markets in Asia Pacific offer high growth potential. Countries like China, India and South Korea are witnessing increasing biotech research and bulk drug production which will drive the need for reagents in coming years. 2. Cell and gene therapy is a major area of focus. Reagents are essential for quality control testing, process development and scalable manufacturing of cell and gene therapies. This represents a lucrative opportunity for leading reagents players.
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wellnessweb · 3 months
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Strategic Insights on Life Science Tools Market Size
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The Life Science Tools Market size was estimated at USD 160.93 billion in 2023 and is expected to reach USD 370.34 billion by 2031 with a growing CAGR of 10.98% during the forecast period of 2024-2031.The Life Science Tools market is experiencing dynamic growth, driven by advancements in technology and an increasing focus on research and development in fields like genomics, proteomics, and cell biology. This market encompasses a wide range of products, including instruments, reagents, consumables, and software used in life sciences research. Innovations in high-throughput sequencing, CRISPR gene editing, and single-cell analysis are significantly expanding the capabilities of researchers, enabling more precise and efficient experiments.
The Life Science Tools industry report talks about trends, market segmentation, and market analysis. The report also includes an overview and an overview section. Additionally, the entire market from numerous diverse geographic areas with large economies is included in this sector. A variety of topics for market participants are highlighted and profiled in the research report, including company and financial overviews, corporate strategic plans, product portfolios, and recent developments.
The report conducts a qualitative analysis of the factors driving and inhibiting market expansion as well as prospective opportunities that could progress the sector. Consider sales, test outcomes, technology, products, and distribution methods. This thorough examination of each one includes thorough national and regional analyses. A special combination of quantitative data and qualitative insights is provided in the Life Science Tools Market report, which can help organizations realize long-term success.
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Market Segmentation
By Technology
Genomic Technology
Proteomics Technology
Cell Biology Technology
Other Analytical & Sample Preparation Technology
Lab Supplies & Technologies
By Type
Cell Culture Systems & 3D Cell Culture
Instruments
Consumables
Cell & Tissue Culture Services
Liquid Chromatography
Instruments
Consumables
Services
Mass Spectrometry
Instruments
Consumables
Services
Flow Cytometry
Instruments
Consumables
Services
Cloning & Genome Engineering
Kits, Reagents, and Consumables
Services
Microscopy & Electron Microscopy
Instruments
Consumables
Services
Next Generation Sequencing
Instruments
Consumables
Services
PCR & qPCR
Instruments
Consumables
Services
Nucleic Acid Preparation
Instruments
Consumables
Services
Nucleic Acid Microarray
Instruments
Consumables
Services
Sanger Sequencing
Instruments
Consumables
Services
Transfection Devices & Gene Delivery Technologies
Equipment
Reagents
NMR
Instruments
Consumables
Services
Other Separation Technologies
Instruments
Consumables
Services
Other Products & Services
Antibodies
General Supplies
Others
Instruments
Consumables
Services
By End User
Government & Academic
Biopharmaceutical Company
Healthcare
Industrial Applications
Others
COVID-19 Impact Analysis
Direct consequences on supply and demand, market and supply chain disruptions, effects on enterprises and financial markets, and other implications are just a few of the significant COVID-19 economic effects on the world. In the wake of the COVID-19 challenge, our foreign analysts are certain that the market will offer producers appealing options. An in-depth explanation of the circumstances, the health of the economy, and COVID-19's impact on the sector as a whole is provided by the Life Science Tools Market  study.
Competitive Scenario
The competition analysis part of this study provides comprehensive profiles of the successful companies operating in the target market. The most recent developments are covered by the Life Science Tools Market analysis. It concentrates on the most popular markets, geographic regions, and commercial uses. It offers both qualitative and quantitative information on the trends, limitations, and growth prospects that will affect the market in the future.
Objectives of the Life Science Tools Market Report
Ongoing research into global market trends in manufacturing and consumption.
One of the most important components of investing is understanding market opportunities and obstacles throughout the anticipated period.
The current supply analysis overview discusses distributors, technology suppliers, and raw material suppliers' tendencies.
Key Questions Answered in the Life Science Tools Market  Report
What possible market expansion prospects might there be in the significant nations and regions?
Which developing markets have the most prospects for technology advancement and uptake?
What strategies are successful market players using to seize the initiative straight away?
What are the main development tactics that large companies use to compete in the market?
How will the industry alter as a result of medium- to long-term product breakthroughs from various companies?
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AI in Cancer Diagnosis Market Share
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reportprimerahul · 1 year
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DNA RNA Extraction Kit Market Size, Type, segmentation, growth and forecast 2023-2030
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DNA RNA Extraction Kit Market
The DNA RNA Extraction Kit Market is expected to grow from USD 1.30 Billion in 2022 to USD 2.20 Billion by 2030, at a CAGR of 7.26% during the forecast period.
DNA RNA Extraction Kit Market Size
The DNA RNA Extraction Kit market research report analyzes the global market segment based on product type (DNA Extraction Kit, RNA Extraction Kit), end-use application (Hospital, Laboratory, Other), and geography (North America, Asia Pacific, Middle East, Africa, Australia and Europe), with the leading market players including Qiagen, Thermo Fisher Scientific, Merck KGaA, Roche, Cytiva, Agilent, Danaher, Promega, Bio-Rad, Bioneer, and Akonni Biosystems. The report dives deep into the dynamics of the market and the regulatory and legal factors, such as the increasing incidence of genetic disorders and the growing demand for personalized medicine and research on gene-based therapies. The market growth can be attributed to technological advancements, increasing research and development activities, and the need for quick, accurate, and efficient extraction of nucleic acids. The report anticipates continued market growth in the future.
DNA RNA Extraction Kit Market Key Player
Qiagen
Thermo Fisher Scientific
Merck KGaA
Roche
Cytiva
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DNA RNA Extraction Kit Market Segment Analysis
The DNA RNA Extraction Kit market targets customers in research and biotechnology laboratories, pharmaceutical companies, academic institutions, and diagnostic centers. The increasing demand for effective and efficient research tools for genetic analysis and clinical diagnostics is driving the revenue growth of the DNA RNA Extraction Kit market. The rising incidence of genetic diseases, cancer, and infectious diseases have led to increased demand for DNA RNA Extraction Kits as a primary step in genetic analysis and diagnosis.
One of the latest trends in the DNA RNA Extraction Kit market is the development of fully automated and high-throughput extraction systems, which enable faster and more efficient extraction of DNA and RNA from different sample types. Moreover, the growing popularity of personalized medicine and genomic-based research is expected to fuel the demand for DNA RNA Extraction Kits in the coming years.
The major challenge faced by the DNA RNA Extraction Kit market is the high cost of these kits, which may limit their accessibility, particularly in developing countries. Additionally, quality control issues in sample preparation and the lack of standardization in DNA RNA extraction protocols may also restrain the growth of the market.
The main findings of the DNA RNA Extraction Kit market report suggest that North America holds the largest share due to the presence of major market players in the region, while the Asia-Pacific region is expected to witness the fastest growth due to the rising demand for molecular diagnostics in the region.
The report recommends market players to focus on product innovation, developing cost-effective and easy-to-use DNA RNA Extraction Kits, and expanding their global reach through strategic partnerships and collaborations. Additionally, the report suggests that regulatory bodies should establish standardized protocols for DNA RNA extraction to ensure consistency and reliability in research and clinical diagnostics.
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Market Segmentation (by Application):
Hospital
Laboratory
Other
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the-rachana · 1 year
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Blood Screening Market Size (2022-2030) Industry Trends, Growth, Challenges, and Forecast: Growth Plus Reports
The global blood screening market is expected to develop considerably during the forecast period. The growth can be due to various factors such as higher blood donation rates, the prevalence of chronic illnesses and infectious diseases, and expanding economies. Other market drivers include the rapid development of new technologies and the introduction of enhanced products. Another beneficial factor in the market is the increase in healthcare initiatives or investments from public and private organizations.
The blood screening market was valued at US$ 2.3 billion in 2021. The market is expected to witness a CAGR of 8.1% from 2022 to 2030.  
Growing chronic illness/disease occurrences also contribute to market expansion. An increase in such incidences is a prime cause of the rise in fatalities. The risk factors include poor eating habits, physical inactivity, and use of cigarettes/tobacco and alcohol. According to the WHO (World Health Organization) report for 2021, nearly 17.9 million people die every year due to chronic diseases such as cancers (9.3 million), respiratory diseases (4.1 million), and diabetes (1.5 million). Thus, these factors encourage the growth of the market globally.
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Key players:
·        Ortho-Clinical Diagnostics Inc.
·        Thermo Fisher Scientific Inc.
·        Abbott Laboratories
·        F. Hoffmann-La Roche AG
·        Grifols S.A.
·        Quotient Technology Inc.
·        Bio-Rad Laboratories Inc.
·        Becton, Dickinson and Company
·        Danaher Corporation (Beckman Coulter)
·        Siemens Healthineers
By Technology:
·        ELISA
·        Western Blot
·        RT-PCR
·        Rapid Test
·        Nucleic Acid Amplification
By Product:
·        Software
·        Instrument
·        Reagent & Kits
Regional Analysis-
·        The Asia-Pacific market is anticipated to grow at a higher CAGR during the forecast period.
·        Major factors contributing to the growth of Blood Screening market in this region include the rising incidence of chronic infectious diseases, rising awareness regarding growing applications of Blood Screening, and increasing research activities in the field of Blood Screening.
·        The emergence of local players and new product launches has also played a critical role in boosting the Blood Screening market in this region.
Key Questions Answered in the Report Include:
(1) This report gives all the information about the industry analysis, revenue, and overview, of this market.
(2) What will be the rate of increase in market size and growth rate by the end of the forecast period?
(3) What are the major global Blood Screening Market trends influencing the development of the market?
(4) What are the vital results of SWOT analysis of the major players operating in the Blood Screening Market?
(5) What are the potential growth opportunities and threats faced by Major competitors in the market?
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Growth Plus Reports is part of GRG Health, a global healthcare knowledge service company. We are proud members of EPhMRA (European Pharmaceutical Marketing Research Association).
Growth Plus portfolio of services draws on our core capabilities of secondary & primary research, market modelling & forecasting, benchmarking, analysis, and strategy formulation to help clients create scalable, ground-breaking solutions that prepare them for future growth and success.
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research--blog · 1 year
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In-vitro Diagnostics (IVD) Reagents Market Worth $77.6 billion by 2027, Growing at a CAGR of 7% From 2020, Says Meticulous Research®
According to a new market research report “In-Vitro Diagnostic Reagents Market by Type (Oligonucleotide, Antibodies, Nucleic Acid Probe), Technology (Immunoassay, Hematology, Microbiology), Use (Research, Analyte Specific Reagent), End User (IVD Manufacturer, Clinical Laboratory) – Forecast to 2027”, published by Meticulous Research®, the IVD reagents market is expected to grow at a CAGR of 7% from 2020 to reach USD 77.6 billion by 2027.
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The epidemiological burden of infectious diseases across the globe has increased in the past few years. During past few decades, various infections such as Severe Acute Respiratory Syndrome (SARS), Middle East Respiratory Syndrome (MERS), Ebola, chikungunya, avian flu, swine flu, and Zika are the majorly occurred emerging infections. The recent outbreak of the coronavirus (COVID-19) disease is an example of the same. Testing is one of the greatest tools in understanding and managing the pandemics. Apart from this, the advances in protein-engineering technologies, such as mass spectrometry; advances in molecular genetics; and progress in production technologies are some of the key drivers of the IVD reagents market. This has urged drug developers to exploit the functional characteristics of desired proteins by maintaining or enhancing product safety or efficacy. The fastest-growing class of therapeutic proteins is an antibody that includes bispecific mAbs and multispecific fusion proteins, and mAbs conjugated with small molecule drugs designed for the treatment of cancers, immune disorders, infections, and other diseases. According to a research article published in F1000Research (an innovative open access publishing platform), the recent developments in protein purification technologies and expression systems have increased the production of therapeutic peptides while maintaining product safety or efficacy or both at the same time. Due to this, the number of therapeutic peptides approvals has grown significantly over the past few years.
Further, government initiatives for the development of personalized medicines, which include monoclonal antibodies as its major part, boosted the production of antibodies. Therefore, the increasing demand for therapeutic proteins and personalized medicine and their subsequent increase in approvals is expected to create significant opportunities for the players operating in the IVD reagents market.
Impact of COVID-19 on the IVD Reagents Market
The COVID-19 pandemic has adversely hit many economies around the globe. In this global pandemic, although many dedicated healthcare professionals work tirelessly on the frontlines to fight against this crisis, it is equally important to minimize the spread of disease by preparing kits for early diagnosis. Thus, the outbreak of the COVID-19 pandemic has created immense opportunities for the IVD reagents market as testing has provided one of the greatest solutions in managing the pandemic. In response to the pandemic and shortages of laboratory-based molecular testing capacity and reagents, multiple diagnostic test manufacturers have developed and begun selling various assays & kits which are prepared by using the IVD reagents.
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Thus, this increase in the launch of newer diagnostic kits will result in the increased adoption of IVD reagents for the kits or the assay development, thereby providing lucrative opportunities for the IVD reagents manufactures in the upcoming years.
The overall IVD reagents market is mainly segmented by type (oligonucleotide, antibodies, nucleic acid probe), technology (immunoassay, hematology, microbiology), use (research, analyte specific reagent), end user (IVD manufacturer, clinical laboratory), and geography. The study also evaluates industry competitors and analyzes their market share at a global and regional level.
On the basis of technology, the immunoassay/immunochemistry segment accounted for the largest share of the overall IVD reagents market in 2020. However, the molecular diagnostics segment is expected to grow at the fastest CAGR during the forecast period due to factors such as the high prevalence of infectious diseases, rising awareness of personalized medicine and companion diagnostics, and advancements in molecular techniques. Further, the rising focus of market players on the development of diagnostic NGS kits and reagents and rising penetration of cutting-edge clinical laboratory technologies are also responsible for the fastest growth of the segment.
Base on the type of reagent, the antibodies segment accounted for the largest share of the overall market in 2020, owing to the widespread application of antibodies in medicine for the purpose of research, diagnosis, drug & IVD development, and disease treatment; increasing proteomics & genomics-based research and funding for R&D; and rising need for disease specific biomarkers.
On the basis of use of the IVD reagent, the clinical use segment commanded the largest share of the overall IVD reagent market in 2020. Rising number of initiatives undertaken by manufacturers for the development of advanced IVD reagents for clinical applications, ongoing clinical trials, and exemption from the investigational device (IDE) requirements are some of the factors driving the growth of this segment.
Based on the end user, reference laboratories accounted for the largest share of the overall IVD reagents market in 2020, due to factors such as the exponential increase in the number of accredited clinical laboratories, growing R&D activities in labs, presence of skilled professionals & well-equipped systems, and outbreak of COVID-19.
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The report also includes extensive assessment of the product portfolio, geographic analysis, and key strategic developments adopted by leading market participants in the industry over the past 3 years. The IVD reagents market has witnessed number of collaborations and expansions in recent years.
Geographically, emerging economies like Asia-Pacific and Latin America are expected to offer significant growth opportunities for IVD reagents manufactures due to the rising demand for antibodies & oligonucleotides, increasing funding for R&D, rising healthcare expenditure, and ongoing developments in the healthcare infrastructure. Countries such as China, India, Brazil, and Mexico have been significant contributors to revenue generation for various stakeholders in the overall IVD reagents market. This is mainly due to the increasing number of research institutes, clinical & diagnostic laboratories, and pharmaceutical & biopharmaceutical industries. In addition, rising public & private funding for R&D and rising contract research in these countries are further supporting the growth of the IVD reagents market in these countries.
Some of the key players operating in the overall IVD reagents market are Becton, Dickinson and Company (U.S.), Merck KGaA (Germany), Thermo Fisher Scientific (U.S.), Bio-Rad Laboratories, Inc. (U.S.), Beckman Coulter, Inc. (U.S.), LGC Biosearch Technologies (U.K.), BioLegend, Inc. (U.S.), InBios International, Inc. (U.S.), LakePharma, Inc. (U.S.), Bioline (U.K.), Abcam plc (U.K.), The Binding Site Group Ltd.(U.K.), SDIX, LLC (U.S.), DIACLONE SAS (France), Bio-Techne Corporation (U.S.), Agilent Technologies, Inc. (U.S.), Hologic Inc. (U.S.), Bio-Synthesis Inc. (U.S.), RayBiotech, Inc. (U.S.), and Sino Biological Inc. (China), among others.
Scope of the Report:
IVD Reagents Market, by Technology
Immunoassay/Immunochemistry
Biochemistry/Clinical Chemistry
Molecular Diagnostics
Microbiology
Hematology
Coagulation/Hemostatis
Other technologies
Other Technologies comprises of hybridization and loop-mediated isothermal amplification 
IVD Reagents Market, by Type
Antibodies
Oligonucleotides
Nucleic Acid Probes
Purified Proteins or Peptides
Other reagents
Other reagents comprises of blocking agents, detergents, surfactants, wetting agents, buffers, stabilizers, purified water, dyes, standards & controls, enzymes, cell culture reagents, anti-coagulants
IVD Reagents Market, by Use
Research Use
Analyte Specific Reagents
Clinical Use
IVD Reagents Market, by End User
IVD Manufacturers
Reference Laboratories
Academic & Research Institutes
Hospital Laboratories
IVD Reagents Market, by Geography
North America
U.S.
Canada
Europe
Germany
France
Italy
U.K.
Spain
Rest of Europe
Asia-Pacific (APAC)
Japan
China
India
Rest of Asia Pacific
Latin America
Middle East & Africa
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balrajgis · 2 years
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Blood Screening Market is anticipated to expand at a compound annual growth rate (CAGR) 6.9% from 2021 to 2031 | Grifols (Spain), F. Hoffmann-La Roche Ltd. (Switzerland), Abbott Laboratories, Inc. (US)
The blood screening market size was USD 2.8 billion in 2021 and it is anticipated to reach USD 5.5 billion in 2031, growing at a CAGR of 6.9% from 2022-2031.
Global Blood Screening Market report from Global Insight Services is the single authoritative source of intelligence on Blood Screening Market. The report will provide you with analysis of impact of latest market disruptions such as Russia-Ukraine war and Covid-19 on the market. Report provides qualitative analysis of the market using various frameworks such as Porters’ and PESTLE analysis. Report includes in-depth segmentation and market size data by categories, product types, applications, and geographies. Report also includes comprehensive analysis of key issues, trends and drivers, restraints and challenges, competitive landscape, as well as recent events such as M&A activities in the market.
Blood screening is a medical process in which blood is examined for a specific disease or condition. It aids in monitoring disease and preventing health issue and a variety of other conditions such as infection and cancer. Human Immunodeficiency Virus (HIV), blood type, and pregnancy screenings are the most common types of blood screening.
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Market Trends and Drivers
The key factor boosting the market growth is an increasing number of blood donations across the globe. There is an increase in the need for donated blood owing to advancements in healthcare systems and the availability of and the need for sophisticated surgical procedures, like cardiovascular & transplant surgery, trauma care, and therapy for cancer and blood diseases. On an average around 235 million major surgeries are being performed across the globe every year, of which 63 million are traumatic surgeries, cancer-related are over 31 million, and 10 million are related to pregnancy complications. Blood transfusion is generally prescribed in complicated childbirth to prepare for childhood congenital maternal blood disorders, acute anemia, and trauma.
Market Segments
By Product & Services
Reagents & Kits
Instruments
By Technology
Nucleic Acid Test
ELISA
Rapid Tests
By End User
Blood Banks
Hospitals
By Regions
North America
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Key Players
Grifols (Spain)
F. Hoffmann-La Roche Ltd. (Switzerland)
Abbott Laboratories, Inc. (US)
bioMérieux (France)
Bio-Rad Laboratories, Inc. (US)
Becton, Dickinson and Company (US)
Beckman Coulter, Inc. (Danaher) (US)
DiaSorin (Italy)
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mingyipcr · 3 years
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The method and characteristics of PCR identification kit
PCR Identification Kit Features:
1. One-tube operation, users only need to provide samples.
2. Primers are designed according to the conserved region of soybean heat shock protein gene, which can specifically detect soybean components in the sample, but cannot detect other non-soy components.
3. Fast, the entire detection process (according to one sample) takes only 2.0 hours.
4. Only need common PCR machine and gel electrophoresis machine, no need to configure expensive equipment.
5. The lower limit of detection for soybean components in mixed samples is 0.1%, and the lower detection limit for nucleic acids for soybean components in samples is 1.0ng/μL.
6. This product can only be used for scientific research, enough for 50 times of routine PCR in 40uL system.
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How to use PCR identification kit:
1. Dilute the standard curve samples (take 10E2-10E7 copies/μL as an example of six 10-fold dilutions). Since the standard concentration is very high, the following dilution operations must be performed in a separate area, and must not contaminate the sample or other components of the kit).
1.1 Label the 6 centrifuge tubes as 7, 6, 5, 4, 3, and 2.
2.1 Use a cored pipette tip to add 45 μL of fluorescent PCR template dilution solution, *use a cored pipette tip, the same below).
3.1 Add 5 μL of positive control (concentration of 1×10E8 copies/μL, provided by the kit) to the No. 7 tube, shake well for 1 minute, and obtain a standard curve sample of 1×10E7 copies/μL. Set aside on ice.
4. 1Change the pipette tip, add 5 μL of 1×10E7 copies/μL positive control (obtained in the previous step) to tube 6, shake well for 1 minute, and obtain a standard curve sample of 1×10E6 copies/μL. Set aside on ice.
5.1 Change the pipette tip, add 5 μL of 1×10E6 copy/μL positive control (dilution in the previous step) to tube 5, and shake well for 1 minute
clock to obtain a standard curve sample of 1×10E5 copies/μL. Set aside on ice.
6. 1Repeat the above procedure until 6 dilutions of the standard curve samples are obtained. Set aside on ice.
2. Preparation of sample DNA
2.1 Purify the DNA of the sample by the method of your choice. This product is compatible with most nucleic acid purification products on the market.
2.2 If there are N samples, N+2 sample extractions need to be performed, one extra for the sample preparation positive control tube and the other for the sample preparation negative control tube.
2.3.Set up the qPCR reaction (20μL system, in the sample preparation room)
2.4. If doing quantitative analysis and only doing 1 replicate, label N+9 PCR tubes, of which N+2 are for the N+2 samples from the previous step and 1 is for the PCR negative control (use water as template). ), 6 for the standard curve. If qualitative analysis is performed and only 1 repetition is performed, label N+4 PCR tubes, of which N+2 are used for the N+2 samples obtained in the previous step, and 1 is used for PCR negative control (use water as template) , 1 for PCR positive control.
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123567-9qaaq9 · 4 months
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Nucleic Acid Sample Preparation  Market Future Trends to Look Out | Bis Research
Nucleic acid sample preparation involves the process of DNA or RNA isolation or extraction, done by manual and automated techniques. Sample preparation of nucleic acids is the initial step in most molecular biology studies and all recombinant techniques. 
The global   Nucleic Acid Sample Preparation Market is projected to reach $5,615.9 million by 2033 from $2,922.8 million in 2023, growing at a CAGR of 6.75% during the forecast period 2023-2033.
Nucleic Acid Sample Preparation Overview
Deoxyribonucleic acid (DNA) is a nucleic acid containing the genetic instructions used in the development and functioning of all known living organisms. The chemical DNA was discovered in 1869, but its role in genetic inheritance was not demonstrated until 1943. The DNA segments that carry this genetic information are called genes. Other DNA sequences have structural purposes, or are involved in regulating the use of this genetic information. 
Key Steps in Nucleic Acid Sample Preparation Market
Sample Collection and Preparation 
Cell Lysis 
Removal of Contaminants 
Nucleic Acid Precipitation 
Purification 
Grab a look at the free sample page for more understanding click here !
Visit our Precision Medicine Vertical Page Click Here !
Market Segmentation
Product Type 
(i) Kits and Reagents 
(ii) Instruments 
(iii) Consumables 
Application Type 
(i) Clinical Diagnostics 
(ii) Research Applications 
(iii) Forensic Sciences 
(iv) Environmental Testings 
End Users 
(i) Academic and Research Institutes 
(ii) Hospitals and Diagnostics 
(iii) Pharmaceuticals and Biotechnology 
Recent Developments in the Nucleic Acid Sample Preparation  Market
Qiagen N.V. introduced two groundbreaking additions to its sample technologies portfolio, i.e., the TissueLyser III that facilitates high-throughput disruption of diverse biological samples and the RNeasy PowerMax Soil Pro Kit that isolates high-purity RNA from challenging soil samples using advanced Inhibitor Removal Technology.
PerkinElmer introduced the CHEF Magnetic Bead Cleanup System, providing automated nucleic acid purification through advanced magnetic bead technology. This novel system would help automate the nucleic acid purification process efficiently.
Conclusion
Nucleic acid sample preparation  may be required from human cells of different types or free circulating NA. When pathogens are of interest, viruses, bacteria, protozoans, and fungi must be considered. Multiplex testing may depend on simultaneous isolation of NA from some or all of these sources.
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market-researchm · 3 years
Text
Global In Situ Hybridization (ISH) Market Analysis, Share, Growth, Industry Trends, Overview And Forecast To 2025
Global In Situ Hybridization (ISH) Market is expected to reach USD 1.84 billion by 2025. In Situ Hybridization (ISH) is a type of hybridization a method that permits for specific localization of an exact segment of nucleic acid inside a histologic section. That means it involves the use of labeled RNA probes or labeled DNA probes to detect complementary DNA or RNA targets in cytologic preparations or tissue sections. Synthetic oligonucleotides (PNA, LNA), Double-stranded DNA (dsDNA) probes, RNA probes (riboprobes), and Single-stranded DNA (ssDNA) probes are the majorly used ISH probes.
It can be labeled using two major techniques like Non-radioactive labels and radioactive isotopes. A labeled RNA or DNA probe can be used to hybridize to a known target DNA or mRNA sequence within a sample. This labeled RNA or DNA probe can then be detected by using an antibody to detect the label on the probe. The In Situ Hybridization (ISH) industry is estimated to grow at a significant CAGR of 7.3% over the future period as the scope and its applications are rising enormously across the globe. In Situ Hybridization (ISH) Market is segmented based on product type, technology, probe type, application, end use, and region.
Services, instruments, software, and kits & probes are the product types that could be explored in In Situ Hybridization (ISH) in the forecast period. The instruments sector accounted for the largest market share of In Situ Hybridization (ISH) industry and is estimated to continue its dominance in the upcoming years. This may be because of high demand from research laboratories and diagnostic centers. Also, these instruments are easy to handle, cost-efficient, and portable these factors may lead the sector in coming years. However, kits & probes sector is estimated to grow at highest CAGR in the coming years.
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The enhanced technology used in In Situ Hybridization (ISH) is Chromogenic In Situ Hybridization (CISH) and Fluorescent In Situ Hybridization (FISH) that could be explored in the future period. RNA probe and DNA probe are the two main types of probes that could be explored in In Situ Hybridization (ISH) in the foremost period. The DNA probes sector is estimated to account largest revenue shares of In Situ Hybridization (ISH) in the coming years. Whereas, RNA sector is estimated to grow at highest CAGR in the coming years.
The market may be categorized based on applications like infectious diseases, cancer, developmental biology, cytogenetics, and others that could be explored in the future period. Cancer sector accounted for the largest market share of In Situ Hybridization (ISH) and is estimated to grow at highest CAGR in the coming years. The reason could be growing occurrence of cancer and rising research in this sector. However, cytogenetics sector is estimated to grow at fastest pace in the coming years.
End users like academic institutes, research & diagnostic laboratories, contract research organizations (CROs), and others could be explored in In Situ Hybridization (ISH) Market in the forecast period. The research & diagnostic laboratories sector accounted for the largest market share of In Situ Hybridization (ISH) and is estimated to lead the overall market in the coming years. This may be because of growing applications of molecular cytogenetics in diagnostics, rising use of enhanced technology in genomics and molecular cytology, and rising initiative in cell research. However, CROs segment is estimated to grow at fastest pace in the coming years.
Globally, North America accounted for the largest market share of In Situ Hybridization (ISH) and is estimated to lead the overall market in the upcoming years. The reason behind the growth of overall market could be government involvement for development of novel diagnostic tools, availability of research funds, and developed research centers. The United States is a major consumer of In Situ Hybridization (ISH) in this region.
Instead, Europe and the Asia Pacific are also estimated to have a positive influence on the future growth. Europe is the second largest region with significant market share. However, Asia Pacific is estimated to grow at fastest pace with the highest CAGR in the foremost period. The aspects that may be ascribed to the growth comprise, growing awareness regarding advantages of In Situ Hybridization (ISH) technology in diagnostics and government initiative in R&D investments in the field of molecular biology. The developing countries like India and China are the major consumers of In Situ Hybridization (ISH) industry in the region.
The key players of In Situ Hybridization (ISH) Market are Oxford Gene Technology, Thermo Fisher Scientific, Advanced Cell Diagnostics, Inc., Leica BiosystemsNussloch GmbH, NeoGenomics Laboratories, Inc., BIOVIEW, Bio-Rad Laboratories, Inc., Agilent Technologies, PerkinElmer, Inc., and Merck KGaA. These players are concentrating on inorganic growth to sustain themselves amongst fierce competition. As such, mergers, acquisitions, and joint ventures are the need of the hour.
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reportsanddata · 3 years
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Immunohistochemistry Market Revenue, Region & Country Share, Trends, Growth Analysis Till 2027
According to the current analysis of Reports and Data, The global Immunohistochemistry market was valued at USD 1,736.4 million in 2018 and is expected to reach USD 3,359.8 million by the year 2026, growing at a CAGR of 8.6%.
Immunohistochemistry (IHC) has crucial applications in the field of tissue distribution of antigens by using monoclonal and polyclonal antibodies. It is used for cancer diagnosis, because it determines the presence of tumor antigens. It is a technique which combines immunological, anatomical, and biochemical processes to identify tissue components by the interaction of target antigens with specific antibodies that are tagged by a label. Immunohistochemistry used by public and private organizations to check localization and distribution of cellular components within the cells.
Immunohistochemistry is being applied in many other areas. Immunohistochemistry is widely used to predict therapeutic response in two important tumors, i.e. carcinoma of breast and prostate. Both these tumors are under the growth regulation of the hormones estrogen and androgen, respectively. The specific receptors for these growth regulating hormones are located on respective tumor cells. Tumors expressing high level of receptor positivity would respond favorably to removal of the endogenous source of such hormones or hormonal therapy is administered to lower their levels – estrogen therapy in prostate cancer and androgen therapy in breast cancer. Immunohistochemistry techniques are also being applied to confirm infectious agent in tissues by use of specific antibodies against microbial DNA or RNA, e.g. in Cytomegalo virus, Hepatitis B virus, Hepatitis C virus, etc. The application is used routinely in validation of disease targets as it allows visualizing expression of the target in the affected tissue during the disease process. Another important advantage of Immunohistochemistry is that it can also be used to detect organisms in cytological preparations such as fluids, sputum samples, and material obtained from fine needle aspiration procedures. This can be very helpful in certain situations such as detection of pneumocystis from the sputum of an immunocompromised patient who needs rapid and precise confirmation of infection in order to begin immediate and appropriate therapy.
Specific diagnosis of muscular dystrophy is important because of the genetic counseling implications of inherited disease and accurate prognostication. In recent years, abnormalities in several muscle proteins have been identified in muscular dystrophies. Such abnormalities involve proteins located in the sarcolemma, extracellular matrix, cytosol, nucleus, and other sites within muscle fibers. Skeletal muscle biopsy can play a main role in differentiating vascular dystrophy from non-dystrophic disorders and Immunohistochemistry can assist in establishing a specific diagnosis of the dystrophies for which specific protein abnormalities are known. In the last few years, immunohistochemical staining for beta amyloid precursor protein has been validated as a method to detect axonal injury within as little as 2–3 h of head injury. Immunohistochemical detection of axonal injury can be useful in establishing timing of a traumatic insult in medico-legal settings.
Rapid growth of healthcare investment in emerging economies and technological development in invitro industry creates the opportunities to manufacturers for Immunohistochemistry kit, equipment and reagents. Growing prevalence of chronic diseases including cancer, cardiovascular diseases, infectious diseases, autoimmune diseases, diabetes mellitus, and nephrological diseases are the key factors for the growth of the market. Significant rise in R&D spending and shift towards comprehensive healthcare solutions are impelling the market growth.
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The report provides an in-depth analysis of the key developments and innovations of the market such as research and development advancements, product launches, mergers & acquisitions, joint ventures, partnerships, government deals, and collaborations. The report offers a comprehensive assessment of key players in the market along with their global position, financial standing, business expansion plans, production and manufacturing capacity, and strategic alliances.
Key players in the market include
 Abcam plc; Agilent Technologies; Bio-Rad Laboratories, Inc.; Cell Signaling Technology, Inc.; Danaher Corporation; Merck KGaA; PerkinElmer, Inc.; and Thermo Fisher Scientific, Inc.
For a better understanding of the global Immunohistochemistry market dynamics, a regional analysis of the market across key geographical areas is offered in the report. The market is spread across key geographical regions such as North America, Europe, Latin America, Asia Pacific, and Middle East & Africa. Each region is analysed on the basis of the market scenario in the major countries of the regions to provide a deeper understanding of the market. It provides insights into production and consumption patterns, supply and demand ratio, export/import, current and emerging trends and demands, market share, market size, revenue contribution, and presence of key players in each region.
Furthermore, the report segments Immunohistochemistry market on the basis of key product types and applications and provides details about the revenue growth, revenue CAGR, and revenue share each segment is expected to register over the forecast period.
Type (Revenue, USD Million; 2017–2027)
 Primary Antibodies
 Secondary Antibodies
 Slide Staining Systems
 Tissue Microarrays
 Tissue Processing Systems
 Slide Scanners
 Others
 Histological Stains
 Blocking Sera and Reagents
 Chromogenic Substrates
 Fixation Reagents
 Stabilizers
 Organic Solvents
 Proteolytic Enzymes
 Diluents
 Application (Revenue, USD Million; 2017–2027)
 Cancer
 Infectious Diseases
 Cardiovascular Diseases
 Autoimmune Diseases
 Diabetes Mellitus
 Nephrological Diseases
 End Use (Revenue, USD Million; 2017–2027)
Hospitals and Diagnostic Laboratories
Clinics
Research Institutes
Others
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In-depth regional analysis includes:
·         North America (U.S., Canada, Mexico)
·         Europe (Italy, U.K., Germany, France, Rest of EU)
·         Asia Pacific (India, China, Japan, South Korea, Australia, Rest of APAC)
·         Latin America (Chile, Brazil, Argentina, Peru, Rest of Latin America)
·         Middle East & Africa (Saudi Arabia, U.A.E., South Africa, Rest of MEA)
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 Benefits of the Global Immunohistochemistry Report:
•        Comprehensive analysis of the opportunities and risks of the Immunohistochemistry market
•        Detailed study of the latest product and technological developments and innovations of the Immunohistochemistry market
•        Business strategies and plans are analysed for understanding the Immunohistochemistry market scenario
•        Revenue forecast of Immunohistochemistry market for the forecast period 2020-2027
•        Comprehensive analysis of the drivers, constraints, limitations, challenges, and opportunities
•        Latest and emerging market trends analysis and their impact on product and application demand
•        Study of recent M&A, joint ventures, collaborations, partnerships, product launches and brand promotions among others
•        Extensive SWOT analysis and Porter’s Five Forces analysis along with investment return analysis and feasibility
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marketreports-world · 3 years
Text
Blood Transfusion Diagnostics Market Research Report - Global Forecast Till 2027
Global Blood Transfusion Diagnostics Market Information, by product (Red Blood Cells, Platelets, Plasma, Albumin, Immunoglobulin Preparations, others) by Technology (Western Blot, ELISA, Nucleic Acid Amplification, Fluorescence assay, Rapid Test, others) by end user (Hospitals, Clinics, Blood banks, Laboratories) - Forecast till 2027
Ortho Clinical Diagnostics (U.S), Immucor (U.S), Beckman Coulter (U.S),  Grifols (Spain), Thermo Fisher Scientific, Inc. (U.S.), F. Hoffmann-La Roche Ltd (Switzerland), bioMérieux (France), Bio-Rad Laboratories, Inc. (U.S.), Siemens (Germany), Becton, Dickinson and Company (U.S.), Novartis AG (Switzerland), Beckman Coulter, Inc. (U.S.), Diagast (France), Abbott Diagnostics (U.S), BAG healthcare (Germany),  DiaSorin (Italy), Fujirebio (Belgium), Grifols (Spain), Quidel (U.S), Hologic/Gen-Probe (U.S), Biokit (Spain).are some of the prominent players at the forefront of competition in the global Blood Transfusion Diagnostics market and top seven players are profiled in MRFR Analysis.
Global Blood Transfusion Diagnostics Market   - Overview
Blood transfusion is an essential part of providing healthcare services to the patients. Blood and blood products like RBC’s, WBC’s, platelets and others are transfused from one person to another. This requires screening tests which are vital before conducting blood transfusion. Strict regulation governing the use and transfer of blood, increasing awareness regarding blood transfusion and automation of blood banks drive the growth of this market. Furthermore, increasing demand for diagnostic and treatment devices in developed and developing countries further influence the growth of the market. However, the growth of the market is restrained by various factors such as risk involved in transmission of infectious disease from one person to another without carrying out screening procedure.
Global Blood Transfusion Diagnostics Market   - Competitive Analysis
There is a significant increase in the number of the company offering blood transfusion diagnostics. Some major companies are trying to focus on new and advanced tests & products to gain the market. Whereas, some are has used the technique of acquisition and collaboration to gain the market.
Hoffmann-La Roche AG:
August, 2015: F. Hoffmann-La Roche AG acquired GeneWEAVE to strengthen offerings in microbiology diagnostics. Roche will pay GeneWEAVE shareholders USD 190 million upfront and up to USD 235 million in contingent product related milestones
February 2015 : F. Hoffmann-La Roche AG announced the collaboration with BioMed X for the development of Nanomaterial-Based Biosensors for Near-Patient Testing
September 2014: F. Hoffmann-La Roche AG launched Elecsys anti-Müllerian Hormone (AMH) fertility test for assessment of ovarian reserve for pregnancy
Abbott:
June, 2017: Alere shareholders approve amended merger with Abbott. This merger will further strengthen the global presence of the company.
August, 2016: Abbott announced the introduction of its new “Alinity”, a family of next generation systems across immunoassay, clinical chemistry, point of care, haematology, blood and plasma screening and molecular diagnostics.
April, 2016: The company received FDA approval for its companion diagnostics “Vysis CLL FISH probe kit” in Leukemia. The kit is used to detect the 17p deletion in chronic lymphocytic leukemia patients, the target population of a new drug from AbbVie.
April, 2016: Abbott received FDA approval for its companion diagnostics “Vysis CLL FISH probe kit” in Leukemia. The kit is used to detect the 17p deletion in chronic lymphocytic leukemia patients, the target population of a new drug from AbbVie.
Bio-Rad Laboratories, Inc.:
July 2017: Bio-Rad Laboratories, Inc., a global provider of life science research and clinical diagnostic products launched Amplichek I quality control for the testing of infectious diseases.
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Global Blood Transfusion Diagnostics Market   - Regional Analysis
Globally, America’s account for the largest market share in blood transfusion diagnostics market consists of two regions namely North America and South America. Increasing in number of blood banks, adoption of automation in blood banks, awareness programs in school & medical institutes and demand of safe and reliable technology for blood transfusion drive this market in North America. Increasing adoption of Nucleic Acid Amplification for diagnosis of blood and blood products also contribute to the growth of this market in North America. United States is the biggest market place worldwide contributing 46% of total blood transfusion diagnostics market. Ortho-Clinical Diagnostic is the largest transfusion diagnostic equipment and solution provider with estimated market share of 7 to 8%. Medical institutes conduct lecture and conference on safe blood transfusion for medical students and also for patients. Europe blood transfusion diagnostics market has observed stable growth owing to increasing demand for advanced diagnostic products. Asia-Pacific is fastest growing market region for this market due to presence of huge patient pool, and huge opportunity for the market growth. The Middle East and Africa holds the least share in the market due to lack of awareness among the people and limited development of medical sector.
Table Of Contents
1. Report Prologue
2. Introduction
2.1 Definition
2.2 Scope Of The Study
2.2.1 Research Objective
2.2.2 Assumptions
2.2.3 Limitations
2.3 Market Structure
2.4. Market Segmentation
3. Research Methodology
3.1 Research Process
3.2 Primary Research
3.3 Secondary Research
3.4 Market Size Estimation
3.5 Forecast Model
4. Market Dynamics
4.1 Drivers
4.2 Restraints
4.3 Opportunities
4.4 Threats
4.5 Macroeconomic Indicators
5. Market Factor Analysis
5.1 Value Chain Analysis
5.2 Porters Five Forces
5.3 Demand & Supply: Gap Analysis
5.4 Pricing Analysis
5.5 Investment Opportunity Analysis
5.6 Merger And Acquisition Landscape
5.7 Up-Coming Trends In Blood Transfusion Diagnostics Market
5.7.1 Market Trends
5.7.2 Technological Trends
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reportprimerahul · 1 year
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DNA RNA Extraction Kit Market Size, Type, segmentation, growth and forecast 2023-2030
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DNA RNA Extraction Kit Market
The DNA RNA Extraction Kit Market is expected to grow from USD 1.30 Billion in 2022 to USD 2.20 Billion by 2030, at a CAGR of 7.26% during the forecast period.
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DNA RNA Extraction Kit Market Size
The DNA RNA Extraction Kit market research report analyzes the global market segment based on product type (DNA Extraction Kit, RNA Extraction Kit), end-use application (Hospital, Laboratory, Other), and geography (North America, Asia Pacific, Middle East, Africa, Australia and Europe), with the leading market players including Qiagen, Thermo Fisher Scientific, Merck KGaA, Roche, Cytiva, Agilent, Danaher, Promega, Bio-Rad, Bioneer, and Akonni Biosystems. The report dives deep into the dynamics of the market and the regulatory and legal factors, such as the increasing incidence of genetic disorders and the growing demand for personalized medicine and research on gene-based therapies. The market growth can be attributed to technological advancements, increasing research and development activities, and the need for quick, accurate, and efficient extraction of nucleic acids. The report anticipates continued market growth in the future.
DNA RNA Extraction Kit Market Key Player
Qiagen
Thermo Fisher Scientific
Merck KGaA
Roche
Cytiva
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DNA RNA Extraction Kit Market Segment Analysis
The DNA RNA Extraction Kit market targets customers in research and biotechnology laboratories, pharmaceutical companies, academic institutions, and diagnostic centers. The increasing demand for effective and efficient research tools for genetic analysis and clinical diagnostics is driving the revenue growth of the DNA RNA Extraction Kit market. The rising incidence of genetic diseases, cancer, and infectious diseases have led to increased demand for DNA RNA Extraction Kits as a primary step in genetic analysis and diagnosis.
One of the latest trends in the DNA RNA Extraction Kit market is the development of fully automated and high-throughput extraction systems, which enable faster and more efficient extraction of DNA and RNA from different sample types. Moreover, the growing popularity of personalized medicine and genomic-based research is expected to fuel the demand for DNA RNA Extraction Kits in the coming years.
The major challenge faced by the DNA RNA Extraction Kit market is the high cost of these kits, which may limit their accessibility, particularly in developing countries. Additionally, quality control issues in sample preparation and the lack of standardization in DNA RNA extraction protocols may also restrain the growth of the market.
The main findings of the DNA RNA Extraction Kit market report suggest that North America holds the largest share due to the presence of major market players in the region, while the Asia-Pacific region is expected to witness the fastest growth due to the rising demand for molecular diagnostics in the region.
The report recommends market players to focus on product innovation, developing cost-effective and easy-to-use DNA RNA Extraction Kits, and expanding their global reach through strategic partnerships and collaborations. Additionally, the report suggests that regulatory bodies should establish standardized protocols for DNA RNA extraction to ensure consistency and reliability in research and clinical diagnostics.
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Market Segmentation (by Application):
Hospital
Laboratory
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marketstudyreport · 3 years
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In Situ Hybridization (ISH) Market Research: Growth Opportunities by Regions, Types, Applications & Forecast to 2025
7th May 2021 – Global In Situ Hybridization (ISH) Market is expected to reach USD 1.84 billion by 2025. In Situ Hybridization (ISH) is a type of hybridization a method that permits for specific localization of an exact segment of nucleic acid inside a histologic section. That means it involves the use of labeled RNA probes or labeled DNA probes to detect complementary DNA or RNA targets in cytologic preparations or tissue sections. Synthetic oligonucleotides (PNA, LNA), Double-stranded DNA (dsDNA) probes, RNA probes (riboprobes), and Single-stranded DNA (ssDNA) probes are the majorly used ISH probes.
It can be labeled using two major techniques like Non-radioactive labels and radioactive isotopes. A labeled RNA or DNA probe can be used to hybridize to a known target DNA or mRNA sequence within a sample. This labeled RNA or DNA probe can then be detected by using an antibody to detect the label on the probe. The In Situ Hybridization (ISH) industry is estimated to grow at a significant CAGR of 7.3% over the future period as the scope and its applications are rising enormously across the globe. In Situ Hybridization (ISH) Market is segmented based on product type, technology, probe type, application, end use, and region. Services, instruments, software, and kits & probes are the product types that could be explored in In Situ Hybridization (ISH) in the forecast period. The instruments sector accounted for the largest market share of In Situ Hybridization (ISH) industry and is estimated to continue its dominance in the upcoming years. This may be because of high demand from research laboratories and diagnostic centers. Also, these instruments are easy to handle, cost-efficient, and portable these factors may lead the sector in coming years. However, kits & probes sector is estimated to grow at highest CAGR in the coming years.
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The enhanced technology used in In Situ Hybridization (ISH) is Chromogenic In Situ Hybridization (CISH) and Fluorescent In Situ Hybridization (FISH) that could be explored in the future period. RNA probe and DNA probe are the two main types of probes that could be explored in In Situ Hybridization (ISH) in the foremost period. The DNA probes sector is estimated to account largest revenue shares of In Situ Hybridization (ISH) in the coming years. Whereas, RNA sector is estimated to grow at highest CAGR in the coming years. The market may be categorized based on applications like infectious diseases, cancer, developmental biology, cytogenetics, and others that could be explored in the future period. Cancer sector accounted for the largest market share of In Situ Hybridization (ISH) and is estimated to grow at highest CAGR in the coming years. The reason could be growing occurrence of cancer and rising research in this sector. However, cytogenetics sector is estimated to grow at fastest pace in the coming years.
End users like academic institutes, research & diagnostic laboratories, contract research organizations (CROs), and others could be explored in In Situ Hybridization (ISH) Market in the forecast period. The research & diagnostic laboratories sector accounted for the largest market share of In Situ Hybridization (ISH) and is estimated to lead the overall market in the coming years. This may be because of growing applications of molecular cytogenetics in diagnostics, rising use of enhanced technology in genomics and molecular cytology, and rising initiative in cell research. However, CROs segment is estimated to grow at fastest pace in the coming years.
Globally, North America accounted for the largest market share of In Situ Hybridization (ISH) and is estimated to lead the overall market in the upcoming years. The reason behind the growth of overall market could be government involvement for development of novel diagnostic tools, availability of research funds, and developed research centers. The United States is a major consumer of In Situ Hybridization (ISH) in this region. Instead, Europe and the Asia Pacific are also estimated to have a positive influence on the future growth. Europe is the second largest region with significant market share. However, Asia Pacific is estimated to grow at fastest pace with the highest CAGR in the foremost period. The aspects that may be ascribed to the growth comprise, growing awareness regarding advantages of In Situ Hybridization (ISH) technology in diagnostics and government initiative in R&D investments in the field of molecular biology. The developing countries like India and China are the major consumers of In Situ Hybridization (ISH) industry in the region.
The key players of In Situ Hybridization (ISH) Market are Oxford Gene Technology, Thermo Fisher Scientific, Advanced Cell Diagnostics, Inc., Leica BiosystemsNussloch GmbH, NeoGenomics Laboratories, Inc., BIOVIEW, Bio-Rad Laboratories, Inc., Agilent Technologies, PerkinElmer, Inc., and Merck KGaA. These players are concentrating on inorganic growth to sustain themselves amongst fierce competition. As such, mergers, acquisitions, and joint ventures are the need of the hour.
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